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作 者:蓝高勇 王华[1] 俞建国[1] 应启和[1] 唐伟[1] 杨会[1]
机构地区:[1]中国地质科学院岩溶地质研究所,广西桂林541004
出 处:《岩矿测试》2016年第4期415-419,共5页Rock and Mineral Analysis
基 金:国土资源部公益性行业专项(21411075-03);国家自然科学基金面上项目(41572234)
摘 要:固体聚合膜电解浓集法是浓缩氚含量较低(<1 Bq/m^3)的天然水样的常用方法,但因水样自身含有杂质离子或电解装置聚合膜带入杂质进入浓集液,使浓集液偏酸性,在测量过程中易产生化学淬灭效应,导致氚的测量值偏低。本文研究了水样自身存在的杂质离子和聚合膜上残留的杂质离子、样品溶液的pH值及其电导率所产生的化学淬灭效应的影响,实验表明,为减少化学淬灭效应,提高测量低含量氚的准确性,需保证水样溶液呈中性,电导率≤1μS/cm,同时避免杂质沉积在聚合膜上。如果水样溶液的pH值偏酸性、电导率大于1μS/cm,可采用酸碱混合型离子交换树脂去除水样中自身的杂质;对于聚合膜引入的杂质,可在电解后的水样中加入微量氨水将其pH值调节至中性。The Solid Polymer Electrolysis( SPE)enrichment method is a practical way to measure low level tritium( 1 Bq / m3) in natural water samples. However,the concentrated liquid samples are acidified by impurity ions from water samples or the process of water sample pretreatment with a SPE electrolysis device,which results in perturbation when liquid scintillation is added progressively to the concentrated liquid. Consequently,the radioactive activity of tritium will be lower than the reference value because of the chemistry quenching effect occurring in the measurement process. The influence of chemistry quenching caused by impurity ions,p H value and electrical conductivity of the low level tritium samples in the tritium measurement results are discussed in this paper. The results show that, to avoid the chemistry quenching caused by impurity ions deposited in SPE electrolysis device and improve the accuracy of measurement counting,it is necessary to keep the p H value neutral and the electrical conductivity ≤1 μS / cm. Using the ion and acid-base hybrid exchange resin column separates impurity ions for high electrical conductivity( 1 μS / cm) or acidification p H samples. For water samples the impurity ions taken by the polymer film,can be used to adjust the p H value with tiny amounts of ammonia to avoid chemistry quenching and thus reduce the low counting of the tritium natural water samples.
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